Study of the Influence of Clay in the Degradation of Methylene Blue by Photo-Fenton Process — Oak Academic Publishing
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Study of the Influence of Clay in the Degradation of Methylene Blue by Photo-Fenton Process
Laboratoire de Constitution et Réaction de la Matière (LCRM), UFR-Science des Structures de la Matière et Technologie (SSMT), Université Félix Houphouët-Boigny (UFHB), Abidjan, Côte d’Ivoire
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Laboratoire de Constitution et Réaction de la Matière (LCRM), UFR-Science des Structures de la Matière et Technologie (SSMT), Université Félix Houphouët-Boigny (UFHB), Abidjan, Côte d’Ivoire
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Laboratoire de Constitution et Réaction de la Matière (LCRM), UFR-Science des Structures de la Matière et Technologie (SSMT), Université Félix Houphouët-Boigny (UFHB), Abidjan, Côte d’Ivoire
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Departement de Mathématiques, Physique et Chimie, UFR des Sciences Biologiques, Université Pelefero Gon Coulibaly, Korhogo, Côte d’Ivoire
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Unité de Formation et de Recherche en Sciences Exactes et Appliquées (UFR/SEA), Laboratoire de Chimie et Energies Renouvelables (LaCER), Université Nazi BONI, Bobo-Dioulasso, Burkina Faso
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Institut National Polytechnique Houphouët Boigny (INP-HB) de Yamoussoukro, Yamoussoukro, Côte d’Ivoire
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Laboratoire de Constitution et Réaction de la Matière (LCRM), UFR-Science des Structures de la Matière et Technologie (SSMT), Université Félix Houphouët-Boigny (UFHB), Abidjan, Côte d’Ivoire
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Laboratoire de Constitution et Réaction de la Matière (LCRM), UFR-Science des Structures de la Matière et Technologie (SSMT), Université Félix Houphouët-Boigny (UFHB), Abidjan, Côte d’Ivoire
1 Laboratoire de Constitution et Réaction de la Matière (LCRM), UFR-Science des Structures de la Matière et Technologie (SSMT), Université Félix Houphouët-Boigny (UFHB), Abidjan, Côte d’Ivoire
2 Laboratoire de Constitution et Réaction de la Matière (LCRM), UFR-Science des Structures de la Matière et Technologie (SSMT), Université Félix Houphouët-Boigny (UFHB), Abidjan, Côte d’Ivoire
3 Laboratoire de Constitution et Réaction de la Matière (LCRM), UFR-Science des Structures de la Matière et Technologie (SSMT), Université Félix Houphouët-Boigny (UFHB), Abidjan, Côte d’Ivoire
4 Departement de Mathématiques, Physique et Chimie, UFR des Sciences Biologiques, Université Pelefero Gon Coulibaly, Korhogo, Côte d’Ivoire
5 Unité de Formation et de Recherche en Sciences Exactes et Appliquées (UFR/SEA), Laboratoire de Chimie et Energies Renouvelables (LaCER), Université Nazi BONI, Bobo-Dioulasso, Burkina Faso
6 Institut National Polytechnique Houphouët Boigny (INP-HB) de Yamoussoukro, Yamoussoukro, Côte d’Ivoire
7 Laboratoire de Constitution et Réaction de la Matière (LCRM), UFR-Science des Structures de la Matière et Technologie (SSMT), Université Félix Houphouët-Boigny (UFHB), Abidjan, Côte d’Ivoire
8 Laboratoire de Constitution et Réaction de la Matière (LCRM), UFR-Science des Structures de la Matière et Technologie (SSMT), Université Félix Houphouët-Boigny (UFHB), Abidjan, Côte d’Ivoire
Industrial effluents from textile, tannery or printing activities often have a significant pollutant load composed of dyes that are difficult to biodegrade. These dyes pose a threat to the environment. To overcome this problem, various processes have been developed to eliminate these dyes in wastewater before their release into nature. Conventional biological or physical processes most often prove to be ineffective and expensive. It is therefore necessary to resort to other processes such as advanced oxidation processes (POA). This work therefore focuses on the study of the influence of clay in the degradation of Methylene Blue by the photo-Fenton process which is one of the advanced oxidation processes (POA), with the source of irradiation, natural light. To do this, two clays from Côte d’Ivoire referenced AB and Aga were the subject of a physicochemical and mineralogical characterization. The results showed that Aga clay is composed of 75.43% quartz, 12.72% kaolinite, 8.75% illite and 3.12% goethite and AB clay consists of 61, 36% kaolinite, 28.6% quartz and 10.10% illite. Under natural light irradiation the optimal amounts of Fenton reagents (iron: 10 mg; H 2 O 2 : 0.1 mL) were determined. Finally, the addition of clay to the photo-Fenton process made it possible to improve the degradation of the pollutant (Methylene Blue). Indeed, the yield increased from 92% for the photo-Fenton process to 98.43% with the addition of AB clay and 98.13% for the addition of Aga clay. The results of the degradation kinetics clearly show that the degradation follows the pseudo-second order kinetics with correlation coefficients greater than 0.99.
Bhuiyan, M.A.R., Islam, A., Ali, A. and Islam, M.N. (2017) Color and Chemical Constitution of Natural Dye Henna ( Lawsonia inermis L) and Its Application in the Coloration of Textiles. Journal of Cleaner Production , 167, 14-22. https://doi.org/10.1016/j.jclepro.2017.08.142
Manaa, Z. (2015) Élimination des composes pharmaceutiques par photo-Fenton heterogene (goethite et argile synthétique): Etude cinétique et transfert des espèces organiques à l’interface minéral solution. Master’s Thesis, Université Ferhat Abbas Sétif. http://dspace.univ-setif.dz:8888/jspui/bitstream/123456789/1698/1/elimination%20de%20SMX%20par%20photofenton.pdf
Ali, I., Asim, M. and Khan, T.A. (2012) Low Cost Adsorbents for the Removal of Organic Pollutants from Wastewater. Journal of Environmental Management , 113, 170-183. https://doi.org/10.1016/j.jenvman.2012.08.028
De Gisi, S., Lofrano, G., Grassi, M. and Notarnicola, M. (2016) Characteristics and Adsorption Capacities of Low-Cost Sorbents for Wastewater Treatment: A Review. Sustainable Materials and Technologies , 9, 10-40. https://doi.org/10.1016/j.susmat.2016.06.002
Barka, N., Assabbane, A., Nounah, A., Albourine, A. and Ait-Ichou, Y. (2008) Degradation Photo-catalytique de deux colorants separés et en mélange Binaire Par TiO 2 -Supporte. Sciences & Technologie A , No. 27, 9-16.
Lopez-Ramon, M.V., Stoeckli, F., Moreno-Castilla, C. and Carrasco-Marin, F. (1999) On the Characterization of Acidic and Basic Surface Sites on Carbons by Various Techniques. Carbon , 37, 1215-1221. https://doi.org/10.1016/s0008-6223(98)00317-0
N’guessan, J.K. (2010) Etude expérimentale et modélisation d’un procédé séquentiel AD-OX d’élimination de polluants organiques. Doctorat Thesis, Institut National Polytechnique de Toulouse.
Voïnovitch, I.A. (1988) Analyse des sols, roches et ciments: Méthodes choisies. Dunod.
Lagergren, S. (1898) Zur theorie der sogenanten adsorption geloster stoffe, Kungliga Svenska Vetenskaps akademiens. Handlingar , 24, 1-39.
Messeaouda, S. (2015) Etude de la capacité de rétention et d’élimination des cations métalliques par des adsorbants naturels. https://www.theses-algerie.com
Elmoubarki, R., Mahjoubi, F.Z., Tounsadi, H., Moustadraf, J., Abdennouri, M., Zouhri, A., et al . (2015) Adsorption of Textile Dyes on Raw and Decanted Moroccan Clays: Kinetics, Equilibrium and Thermodynamics. Water Resources and Industry , 9, 16-29. https://doi.org/10.1016/j.wri.2014.11.001
Miyah, Y., Lahrichi, A., Idrissi, M., Khalil, A. and Zerrouq, F. (2018) Adsorption of Methylene Blue Dye from Aqueous Solutions onto Walnut Shells Powder: Equilibrium and Kinetic Studies. Surfaces and Interfaces , 11, 74-81. https://doi.org/10.1016/j.surfin.2018.03.006
Nirmala, G. and Viruthagiri, G. (2015) A View of Microstructure with Technological Behavior of Waste Incorporated Ceramic Bricks. Spectrochimica Acta Part A : Molecular and Biomolecular Spectroscopy , 135, 76-80. https://doi.org/10.1016/j.saa.2014.06.150
Amon, L.N., Konan, L.K., Goure-Doubi, H., Andji, J.Y.Y., Coulibaly, J.K. and Oyetola, S. (2017) Physico-Chemical and Structural Properties of Clay-Based Ceramic Filters from Côte d’Ivoire. Journal de la Société Ouest- Africaine de Chimie , 44, 70-77.
Méité, N., Marie-Sandrine Kouakou, L.P., Kouamé, A.N., Kouassi, S.S., Silva e Silva, C., Sidibe Sandé, S.L., et al . (2024) Physical and Chemical Properties of Cassava Starch Biopolymer Reinforced with Coconut Fiber and/or Metakaolin. Journal of the Indian Chemical Society , 101, Article 101185. https://doi.org/10.1016/j.jics.2024.101185
Madejová, J. (2003) FTIR Techniques in Clay Mineral Studies. Vibrational Spectroscopy , 31, 1-10. https://doi.org/10.1016/s0924-2031(02)00065-6
Konan, K.L., Soro, J., Andji, J.Y.Y., Oyetola, S. and Kra, G. (2010) Etude comparative de la déshy-droxylation/amorphisation dans deux kaolins de cristallinité différente. Journal de la Société Ouest- Africaine de Chimie , 30, 29-39.
Kouame, A.N., Ouedraogo, M., Manouan, W.M.R., Kouakou, L.P.M., Meite, N., Doubi, B.I.H.G., et al . (2023) Influence of the Size of Soursop Seed Granules on the Mechanical and Water Properties of Compressed Earth Bricks. International Journal of Chemistry and Materials Research , 11, 23-31. https://doi.org/10.18488/64.v11i2.3581
Méité, N. (2019) Physico-Chemical Behavior of Glycerol-Coated Cassava Starch Gels Incorporating Kaolin and Metakaolin. American Journal of Materials Science and Engineering , 7, 1-6.
Méité, N., Konan, L.K., Tognonvi, M.T., Doubi, B.I.H.G., Gomina, M. and Oyetola, S. (2021) Properties of Hydric and Biodegradability of Cassava Starch-Based Bioplastics Reinforced with Thermally Modified Kaolin. Carbohydrate Polymers , 254, Article 117322. https://doi.org/10.1016/j.carbpol.2020.117322
Sanou, A., Coulibaly, S., Kouaménan, N.M., Méité, N., N’Dri, S.N. and Atsé, B.C. (2021) Evaluation of Potential Risks of Farmed Fish Consumption on Human Health. Sciences des Structures et de la Matière , 4, 17-30. http://publication.lecames.org/index.php/mat/article/view/2295
Sanou, I., Ouedraogo, M., Bamogo, H., Meité, N., Seynou, M., Aubert, J., et al . (2024) Microstructural, Physical, and Mechanical Characteristics of Adobes Amended with Cement-Metakaolin Mixtures. Emergent Materials , 7, 1203-1217. https://doi.org/10.1007/s42247-024-00638-9
Ho, Y. (2003) Removal of Copper Ions from Aqueous Solution by Tree Fern. Water Research , 37, 2323-2330. https://doi.org/10.1016/s0043-1354(03)00002-2
Guittonneau, S., De Laat, J., Dore, M., Duguet, J.P. and Honnel, C. (2005) Etude de la dégradation de quelques composés organochlorés volatils par photolyse du peroxyde d’hydrogène en milieux aqueux. Revue des sciences de l ’ eau , 1, 35-54. https://doi.org/10.7202/705002ar
Nicol, M.J. (2020) The Role and Use of Hydrogen Peroxide as an Oxidant in the Leaching of Minerals. 1. Acid Solutions. Hydrometallurgy , 193, Article 105328. https://doi.org/10.1016/j.hydromet.2020.105328
Wei, X., Wu, H., He, G. and Guan, Y. (2017) Efficient Degradation of Phenol Using Iron-Montmorillonite as a Fenton Catalyst: Importance of Visible Light Irradiation and Intermediates. Journal of Hazardous Materials , 321, 408-416. https://doi.org/10.1016/j.jhazmat.2016.09.031
Zhao, T., Xu, S. and Hao, F. (2023) Differential Adsorption of Clay Minerals: Implications for Organic Matter Enrichment. Earth - Science Reviews , 246, Article 104598. https://doi.org/10.1016/j.earscirev.2023.104598
Omwoyo, F.O. and Otieno, G. (2024) Optimization of Methylene Blue Dye Adsorption onto Coconut Husk Cellulose Using Response Surface Methodology: Adsorption Kinetics, Isotherms and Reusability Studies. Journal of Materials Science and Chemical Engineering , 12, 1-18. https://doi.org/10.4236/msce.2024.122001
Karim, A.B., Mounir, B., Hachkar, M., Bakasse, M. and Yaacoubi, A. (2010) Élimination du colorant basique “Bleu de Méthylène” en solution aqueuse par l’argile de Safi. Revue des sciences de l ’ eau , 23, 375-388. https://doi.org/10.7202/045099ar
Pohan, L.A.G., Kambiré, O., Nasir, M. and Ouattara, L. (2020) Photocatalytic and Antimicrobial Properties of [AgTiO 2 ]: [Clay] Nanocomposite Prepared with Clay Different Ratios. Modern Research in Catalysis , 9, 47-61. https://doi.org/10.4236/mrc.2020.94004
Badis, K. (2018) Elimination de deux polluants organiques par photo-induction en phase homogène et hétérogène et par adsorption sur des supports inorganiques locaux. Thèse de doctorat, Université Frères Mentouri-Constantine 1.
Saoudi, S. and Hamouma, O. (2013) Adsorption d’un colorant basique bleu de méthylène sur une argile acidifiée. Mémoire de Master, Université Abderrahmane-Mira de Béjaïa.